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Higher Level Phylogeny and the First Divergence Time Estimation of Heteroptera (Insecta: Hemiptera) Based on Multiple Genes

机译:基于多基因:(半翅目昆虫)更高水平的系统发育和蝽的第一分歧时间估计

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摘要

Heteroptera, or true bugs, are the largest, morphologically diverse and economically important group of insects with incomplete metamorphosis. However, the phylogenetic relationships within Heteroptera are still in dispute and most of the previous studies were based on morphological characters or with single gene (partial or whole 18S rDNA). Besides, so far, divergence time estimates for Heteroptera totally rely on the fossil record, while no studies have been performed on molecular divergence rates. Here, for the first time, we used maximum parsimony (MP), maximum likelihood (ML) and Bayesian inference (BI) with multiple genes (18S rDNA, 28S rDNA, 16S rDNA and COI) to estimate phylogenetic relationships among the infraorders, and meanwhile, the Penalized Likelihood (r8s) and Bayesian (BEAST) molecular dating methods were employed to estimate divergence time of higher taxa of this suborder. Major results of the present study included: Nepomorpha was placed as the most basal clade in all six trees (MP trees, ML trees and Bayesian trees of nuclear gene data and four-gene combined data, respectively) with full support values. The sister-group relationship of Cimicomorpha and Pentatomomorpha was also strongly supported. Nepomorpha originated in early Triassic and the other six infraorders originated in a very short period of time in middle Triassic. Cimicomorpha and Pentatomomorpha underwent a radiation at family level in Cretaceous, paralleling the proliferation of the flowering plants. Our results indicated that the higher-group radiations within hemimetabolous Heteroptera were simultaneously with those of holometabolous Coleoptera and Diptera which took place in the Triassic. While the aquatic habitat was colonized by Nepomorpha already in the Triassic, the Gerromorpha independently adapted to the semi-aquatic habitat in the Early Jurassic.
机译:virosoctera或真正的虫子,是具有不完全变态的最大,形态的不同,经济的重要昆虫。然而,vicaloftera内的系统发育关系仍然存在争议,并且以前的大多数研究基于形态学特征或单一基因(部分或全部18s rDNA)。此外,到目前为止,差异均依赖化石记录的差异时间估计,同时没有对分子发散率进行的研究。在这里,我们首次使用最大分析(MP),最大似然(ML)和贝叶斯推理(BI),具有多种基因(18S rDNA,28S rDNA,16s RDNA和COI)来估计动力制版中的系统发育关系,以及同时,采用惩罚的可能性(R8S)和贝叶斯(兽)分子约定方法来估计该亚达的高速分类的分歧时间。本研究的主要结果包括:Nepomorpha作为所有六棵树(MP树,ML树和核基因数据的贝叶菊和四种基因组合)的最基本的思考,具有全部支持值。 Cimicomorpha和五胞菌的姐妹群关系也被强烈支持。 Nepomorpha起源于早期三叠纪,另外六个动力制版者起源于中间三叠系的一段时间很短的时间。 Cimicomorpha和五托麦粥在白垩纪的家庭水平下进行辐射,并平行于开花植物的增殖。我们的研究结果表明,半甲状腺外杂蛋白内的较高群体辐射同时与在三叠系中进行的浮素鞘翅类和DIPERA的辐射。虽然水生栖息地被奈彼霉菌殖民地殖民,但甘蓝氏菌独立适应早期侏罗纪的半水生栖息地。

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  • 入库时间 2022-08-21 11:24:56

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